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Microwave assisted hydrothermal synthesis of Ag-ZnO nano-micro structures: Comparison of closed and open vessel reactor influence on nitrate solution preparation route

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dc.title Microwave assisted hydrothermal synthesis of Ag-ZnO nano-micro structures: Comparison of closed and open vessel reactor influence on nitrate solution preparation route en
dc.contributor.author Bažant, Pavel
dc.contributor.author Kožáková, Zuzana
dc.contributor.author Kuřitka, Ivo
dc.contributor.author Machovský, Michal
dc.relation.ispartof NANOCON 2012
dc.identifier.isbn 978-80-87294-32-1
dc.identifier.isbn 978-80-87294-35-2
dc.date.issued 2012
dc.citation.spage 209
dc.citation.epage 214
dc.event.title 4th International Conference on NANOCON
dc.event.location Brno
utb.event.state-en Czech Republic
utb.event.state-cs Česká republika
dc.event.sdate 2012-10-23
dc.event.edate 2012-10-25
dc.type conferenceObject
dc.language.iso en
dc.publisher TANGER Ltd.
dc.relation.uri http://www.nanocon.eu/files/proceedings/04/reports/727.pdf
dc.subject microwave synthesis en
dc.subject Ag-ZnO nanostructures en
dc.subject ZnO microstructures en
dc.description.abstract Various Ag-ZnO nanostructures were synthesized by open vessel microwave system MWG1K-10 with reflux system and by pressurized microwave system CEM MARS 5. The material was prepared by microwave synthesis using soluble silver and zinc salts as source materials and hexamethylenetetramine as precipitating agent for ZnO and reducing agent for Ag. Influence of Ag+ ions, reaction condition and pressure by the pressurized microwave system on formation of particle microstructure was investigated. Scanning electron microscopy (SEM), Energy dispersive X-ray analyse (EDX) and powder X-ray difractometry (XRD) was used in order to investigate the morphology, phase composition and crystalline structure. en
utb.faculty Faculty of Technology
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1003743
utb.identifier.rivid RIV/70883521:28110/12:43869315!RIV13-MSM-28110___
utb.identifier.rivid RIV/70883521:28610/12:43869315!RIV13-MSM-28610___
utb.identifier.obdid 43869586
utb.identifier.scopus 2-s2.0-84923683389
utb.identifier.wok 000333697100038
utb.source d-wok
dc.date.accessioned 2014-06-05T20:22:59Z
dc.date.available 2014-06-05T20:22:59Z
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Bažant, Pavel
utb.contributor.internalauthor Kožáková, Zuzana
utb.contributor.internalauthor Kuřitka, Ivo
utb.contributor.internalauthor Machovský, Michal
utb.fulltext.affiliation Pavel BAZANT a,b*, Zuzana KOZAKOVA a,b , Ivo KURITKA a,b , Michal MACHOVSKY a,b a Centre of Polymer Systems, University Institute, Tomas Bata University in Zlin, Nad Ovcirnou 3685, 760 01 Zlin, Czech Republic. b Polymer Centre, Faculty of Technology, Tomas Bata University in Zlin, Nam. T. G. Masaryka 275, 762 72 Zlin, Czech Republic. *Corresponding author. Tel. +420 576 038 049; fax: +420 576 031 444. E-mail address: bazant@uni.utb.cz (P. Bazant).
utb.fulltext.dates -
utb.fulltext.sponsorship This article was written with support of Operational Program Education for Competitiveness cofunded by the European Social Fund (ESF) and national budget of Czech Republic, within the framework of project Advanced Theoretical and Experimental Studies of Polymer Systems (reg. number: CZ.1.07/2.3.00/20.0104). This article was written with support of Operational Program Research and Development for Innovations co-funded by the European Regional Development Fund (ERDF) and national budget of Czech Republic, within the framework of project Centre of Polymer Systems (reg. number: CZ.1.05/2.1.00/03.0111). The authors wish to thank the internal grant of TBU in Zlín No. IGA/FT/2012/042 funded from the resources of specific university research for financial support.
utb.fulltext.faculty Faculty of Technology
utb.fulltext.faculty University Institute
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Polymer Centre
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